G05D16/2073

THERMAL AND ACOUSTICAL MANAGEMENT IN INFORMATION HANDLING SYSTEMS BASED ON MECHANICAL CONNECTIONS
20220221918 · 2022-07-14 ·

A quality of a mechanical connection within an information handling system may be inferred based on pressure. An electronic pressure sensor is disposed between two components operating within the information handling system. The electronic pressure sensor generates an output signal in response to a clamping pressure and/or clamping force between the two components. Performance of a processor operating within the information handling system may be controlled in response to the clamping pressure and/or clamping force. A speed of a cooling fan operating within the information handling system may be controlled in response to the clamping pressure and/or clamping force. Any internal components operating within the information handling system may be controlled in response to the clamping pressure and/or clamping force.

Valve control apparatus and vacuum valve
11054847 · 2021-07-06 · ·

A valve control apparatus comprises: a generator configured to generate a first set pressure signal; and a valve opening controller configured to perform the first valve opening control on the basis of the target pressure and, after the first valve opening control, perform the second valve opening control performing feedback control on the basis of a difference between the first set pressure signal and the chamber pressure. The generator generates the first set pressure signal on the basis of a first set pressure locus converging from the chamber pressure at the time of switching from the first valve opening control to the second valve opening control to the target pressure with a predetermined time constant.

High pressure manifold, assembly, system and method
10768642 · 2020-09-08 · ·

The present application is directed to a manifold system for low pressure and high pressure fluids. The manifold system may include one or more manifold sub-assemblies that may be assembled together, separated apart and replaced as desired. In oil and gas hydraulic fracturing operations, each manifold sub-assembly includes two or more low pressure fluid lines and two or more high pressure fluid lines for fluidly communicating with hydraulic fracturing pumps. High pressure fluid may exit the manifold system via a single line or multiple lines.

VALVE CONTROL APPARATUS AND VACUUM VALVE
20200272178 · 2020-08-27 ·

A valve control apparatus comprises: a generator configured to generate a first set pressure signal; and a valve opening controller configured to perform the first valve opening control on the basis of the target pressure and, after the first valve opening control, perform the second valve opening control performing feedback control on the basis of a difference between the first set pressure signal and the chamber pressure. The generator generates the first set pressure signal on the basis of a first set pressure locus converging from the chamber pressure at the time of switching from the first valve opening control to the second valve opening control to the target pressure with a predetermined time constant.

HIGH INTEGRITY PROTECTION SYSTEM FOR HYDROCARBON FLOW LINES

A high integrity protection system includes a flow line including an inlet configured to be connected to a first source of pressure and an outlet configured to be connected to a downstream system. A first subsystem is installed on the flow line between the inlet and the outlet. A second subsystem is installed on the flow line between the inlet and the outlet, and the second subsystem is in a parallel flow configuration in relation to the first subsystem. The system includes a second source of pressure configured to be fluidically connected to the first subsystem and the second subsystem.

AUTOMATED PRESSURE CONTROL SYSTEM
20200232454 · 2020-07-23 ·

To compensate for an event, equipment may require a power down sequence of a motor connected to a pump to prevent the pumping of servicing fluid at a high pressure, high pressure fluid may be required to be diverted to a reservoir or otherwise diverted from a wellhead, multiple pumping systems may require that pumping pressure be altered or adjusted or that flow rate be altered or adjust to manage or control the conditions to protect equipment or personnel at a site. Activating, adjusting or altering an operational characteristic of equipment by using a control system may automatically initiate the most efficient and effective mitigation steps for equipment at a site when condition is detected or predicted. Collecting and analyzing information from devices, components, sensors, control systems, other equipment or any combination thereof at a site by a master control system provides automated control of pressure sensitive conditions.

High integrity protection system for hydrocarbon flow lines

A high integrity protection system includes a flow line including an inlet configured to be connected to a first source of pressure and an outlet configured to be connected to a downstream system. A first subsystem is installed on the flow line between the inlet and the outlet. A second subsystem is installed on the flow line between the inlet and the outlet, and the second subsystem is in a parallel flow configuration in relation to the first subsystem. The system includes a second source of pressure configured to be fluidically connected to the first subsystem and the second subsystem.

SYSTEMS AND METHODS FOR AUTONOMOUS MARKING MAINTENANCE
20200143141 · 2020-05-07 ·

A marking maintenance system comprising a marking database, a drone, and a data network communicatively coupled to the marking database and drone. The marking database is arranged to store marking data associated with one or more markings. The marking data can include one or more marking locations within a geographic area and a type of infrastructure associated with each of the one or more marking. The drone is arranged to determine the location of the drone via one or more location sensors, receive data from the marking database, and deploy to each marking location within a portion of the geographic area. The drone is also arranged to determine whether each marking within the portion of the geographic area is sufficiently present using one or more marker sensors and repair each marking within the portion of the geographic area that is determined to not be sufficiently present.

SYSTEMS AND METHODS FOR AUTONOMOUS MARKING IDENTIFICATION
20200145789 · 2020-05-07 ·

A marking identification system comprising a marking database, a drone, and a data network communicatively coupled to the marking database and drone. The marking database is arranged to store marking data associated with one or more markings. The marking data can include one or more marking locations within a geographic area and a type of infrastructure associated with each of the one or more marking. The drone is arranged to determine the location of the drone via one or more location sensors, receive data from the marking database, and deploy to the location within the geographic area. The drone is also arranged to detect one or more markings within the geographic area, detect an indicator in pain associated with each of the detected markings, and determine a type of infrastructure associated with each of the detected markings based on the detected indicator associated with each of the markings.

SYSTEMS AND METHODS FOR AN AUTONOMOUS MARKING APPARATUS
20200142414 · 2020-05-07 ·

An autonomous marking apparatus comprising a propulsion system, a location sensor, a payload assembly, one or more marking sensors, a transceiver, a data store, and a processor. The location sensor is arranged to determine the location of the apparatus. The payload assembly is arranged to carry a payload of marking material. The one or more marking sensors are arranged to scan an area in proximity to the apparatus. The transceiver is arranged to exchange data with a remote server via a data network. The data store is arranged to store a portion of the data. The processor is arranged to receive data from the location sensor, the one or more marking sensors, and from the transceiver. The processor is also arranged to send data to the transceiver and control the delivery of the payload at the location of the apparatus.